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首页> 外文期刊>Nature Communications >Single-catalyst high-weight% hydrogen storage in an N-heterocycle synthesized from lignin hydrogenolysis products and ammonia
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Single-catalyst high-weight% hydrogen storage in an N-heterocycle synthesized from lignin hydrogenolysis products and ammonia

机译:由木质素氢解产物和氨合成的 N -杂环中的单催化剂高重量%氢存储

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Large-scale energy storage and the utilization of biomass as a sustainable carbon source are global challenges of this century. The reversible storage of hydrogen covalently bound in chemical compounds is a particularly promising energy storage technology. For this, compounds that can be sustainably synthesized and that permit high-weight% hydrogen storage would be highly desirable. Herein, we report that catalytically modified lignin, an indigestible, abundantly available and hitherto barely used biomass, can be harnessed to reversibly store hydrogen. A novel reusable bimetallic catalyst has been developed, which is able to hydrogenate and dehydrogenate N -heterocycles most efficiently. Furthermore, a particular N -heterocycle has been identified that can be synthesized catalytically in one step from the main lignin hydrogenolysis product and ammonia, and in which the new bimetallic catalyst allows multiple cycles of high-weight% hydrogen storage.
机译:大规模储能和利用生物质作为可持续的碳源是本世纪的全球挑战。共价结合在化合物中的氢的可逆存储是一种特别有希望的储能技术。为此,将非常需要能够持续合成并且允许高重量%氢存储的化合物。在本文中,我们报告说,可以利用催化改性的木质素(一种不可消化的,数量丰富的,迄今很少使用的生物质)来可逆地存储氢。已经开发出一种新颖的可重复使用的双金属催化剂,其能够最有效地使N-杂环加氢和脱氢。此外,已经鉴定出可以从一级木质素氢解产物和氨中一步催化合成的特定N-杂环,并且其中新的双金属催化剂允许高重量%氢存储的多个循环。

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